首页> 外文会议>Pacific Northwest Fiber Optic Sensor Workshop >An Update on Monitoring Moisture Ingression with Fiber Optic Sensors
【24h】

An Update on Monitoring Moisture Ingression with Fiber Optic Sensors

机译:用光学传感器监测水分进入的更新

获取原文

摘要

Newly developed advanced aircraft structures are utilizing composite technology for improving stiffness, strength and weight properties. Such structures are commonly found in inaccessible regions where current NDE techniques are limited. The development of low profile, distributed, embeddable, real-time, optical fiber sensors capable of detecting the onset of composite failure in aircraft structures would eliminate a significant portion of related maintenance costs. Notable composite failures that are difficult to assess include delaminations and moisture ingression issues. Optical fiber-based sensors add the inherent advantages of being lightweight, low profile, immune to EMI, resistant to harsh environments, and highly sensitive to a variety of physical and chemical measurements. Optical fiber-based sensors can also be embedded directly into the composite part during manufacturing and co-cured. This creates a monitoring system that has little impact on the properties of the final part while providing significant benefits. Fiber optics embedded in composite honeycomb panels were fabricated and tested using ground ― air ― ground thermal cycles to determine moisture ingression monitoring capabilities of the sensors. Two different types of moisture sensing fiber optics were measured. One type of installed moisture sensor is based off of a Bragg grating system, while the other moisture sensor is based off of a long period grating system. Presented herein is a comparison of the two different types of fiber optic sensors that monitored the moisture ingression in honeycomb panels.
机译:新开发的先进飞机结构利用复合技术来改善刚度,强度和重量特性。这种结构通常在难以接近的区域中找到,其中当前NDE技术有限。能够在飞机结构中检测复合故障的开始的低调,分布,嵌入,实时,光纤传感器的开发将消除相关维护成本的重要部分。值得注意的复合故障,这些故障难以评估包括分层和水分进入问题。基于光纤的传感器增加了轻量级,低调,免受EMI的固有优势,耐恶劣环境,对各种物理和化学测量的高度敏感。基于光纤的传感器也可以在制造期间直接嵌入复合部件中并共固化。这将创建一个监控系统,这对最终部分的性质影响不大,同时提供了显着的好处。使用地面空气地热循环制造和测试嵌入复合蜂窝板中的光纤,以确定传感器的水分进入监测能力。测量了两种不同类型的水分传感光纤。一种安装的湿度传感器基于布拉格光栅系统,而其他湿度传感器基于长周期光栅系统。本文呈现的是两种不同类型的光纤传感器的比较,该光纤传感器监测蜂窝板中的水分进入。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号